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Margalef revisited: A new phytoplankton mandala incorporating twelve dimensions, including nutritional physiology

机译:再次对玛格丽夫(Margalef)进行了研究:一种新的浮游植物曼陀罗,融合了十二个方面,包括营养生理学

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摘要

Building on the classic depiction of the progression from a diatom to a dinoflagellate bloom as a function of nutrients and turbulence, known as the "Margalef mandala", a new conceptual model or mandala is presented here. The new mandala maps twelve response or effects traits, or environmental characteristics, related to different phytoplankton functional types: (1) relative preference for chemically reduced vs chemically oxidized forms of nitrogen; (2) relative availability of inorganic nitrogen and phosphorus; (3) adaptation to high vs low light and the tendency to be autotrophic vs mixotrophic; (4) cell motility; (5) environmental turbulence; (6) pigmentation quality; (7) temperature; (8) cell size; (9) relative growth rate; (10) relative production of bioactive compounds such as toxins or reactive oxygen species (ROS); (11) r vs K strategy; and (12) fate of the production in terms of grazing. The new mandala serves to highlight the differences and trade-offs between traits and/or environmental conditions, and illustrates some traits tend to track each other, a concept that may be helpful in trait based modeling approaches and in understanding environmental factors associated with harmful algal blooms. It is hoped that this new mandala captures some of our recent insight into phytoplankton physiology and functional traits, and has contemporary relevance in light of anthropogenic changes in nutrient form and ratio. (C) 2016 Elsevier B.V. All rights reserved.
机译:建立在从硅藻到鞭毛藻的生长作为养分和湍流的函数的经典描述的基础上,称为“ Margalef曼陀罗”,在此提出了一种新的概念模型或曼陀罗。新的曼陀罗绘制了与不同浮游植物功能类型有关的十二个反应或效应特征或环境特征:(1)相对优先选择化学还原形式与化学氧化形式的氮; (2)无机氮和磷的相对利用率; (3)对高光和弱光的适应以及自养与混养的趋势; (4)细胞运动; (5)环境动荡; (6)色素沉着质量; (7)温度; (8)像元大小; (9)相对增长率; (10)相对产生生物活性化合物,例如毒素或活性氧(ROS); (11)r vs K策略; (十二)放牧生产的命运。新的曼陀罗旨在突出性状和/或环境条件之间的差异和折衷,并说明一些性状倾向于相互跟踪,这一概念可能有助于基于性状的建模方法以及有助于理解与有害藻类相关的环境因素绽放。希望这种新的曼陀罗捕捉到我们对浮游植物生理学和功能性状的最新见解,并根据人为养分形式和比例的变化而具有当代意义。 (C)2016 Elsevier B.V.保留所有权利。

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